首页> 外文OA文献 >In Situ Electrochemical, Electrochemical Quartz Crystal Microbalance, Scanning Tunneling Microscopy, and Surface X-ray Scattering Studies on Ag/AgCl Reaction at the Underpotentially Deposited Ag Bilayer on the Au(111) Electrode Surface
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In Situ Electrochemical, Electrochemical Quartz Crystal Microbalance, Scanning Tunneling Microscopy, and Surface X-ray Scattering Studies on Ag/AgCl Reaction at the Underpotentially Deposited Ag Bilayer on the Au(111) Electrode Surface

机译:原位电化学,电化学石英晶体微量天平,扫描隧道显微镜和表面X射线散射研究Au(111)电极表面上欠电沉积的Ag双层处的Ag / AgCl反应

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摘要

Ag/AgCl reaction at the Ag bilayer, which was underpotentially prepared on a Au(111) surface, was investigated using electrochemical quartz crystal microbalance (EQCM), scanning tunneling microscopy (STM), surface X-ray scattering (SXS), and electrochemical techniques. When the potential was scanned positively from -200 mV, the Cl^[-] ion was adsorbed on the Au(111) electrode surface around 0 mV, and then the phase transition of the adsorbed Cl^[-] ion layer from random orientation to (√3 x √3) structure took place at around +130 mV. The Ag bilayer and Cl^[-] ions were oxidatively reacted to form the AgCl monolayer with (√13 x √13)R13.9° structure around +200 mV, accompanied with the formation of AgCl monocrystalline clusters on the AgCl monolayer surface. The structure of the AgCl monolayer on the Au(111) surface was changed from (√13 x √13)R13.9° structure to (4 x 4) structure around +500 mV. When the potential was scanned back negatively, the AgCl monolayer was electrochemically reduced, and a Ag monolayer, not a bilayer, was formed on the Au(111) surface. In the subsequent potential cycles, the structural change between the Ag monolayer and the AgCl monolayer was reversibly observed. All oxidative structural changes were much slower than the reductive ones.
机译:使用电化学石英晶体微天平(EQCM),扫描隧道显微镜(STM),表面X射线散射(SXS)和电化学方法研究了在Au(111)表面上欠电制备的Ag双层上的Ag / AgCl反应技术。当从-200 mV正扫描电势时,Cl ^ [-]离子被吸附在0 mV附近的Au(111)电极表面,然后吸附的Cl ^ [-]离子层从无规取向发生相变。至(√3x√3)结构发生在+130 mV附近。 Ag双层与Cl ^ [-]离子发生氧化反应,形成+200 mV附近具有(√13x√13)R13.9°结构的AgCl单层,并在AgCl单层表面形成AgCl单晶簇。 Au(111)表面上的AgCl单层结构在+500 mV左右从(√13x√13)R13.9°结构变为(4 x 4)结构。当电势被负扫描回时,AgCl单层被电化学还原,并且在Au(111)表面上形成了Ag单层而不是双层。在随后的潜在循环中,可逆地观察到了Ag单层和AgCl单层之间的结构变化。所有的氧化结构变化都比还原的慢得多。

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